WO2015196895A1 - 用影像辨识系统控制的照明装置 - Google Patents

用影像辨识系统控制的照明装置 Download PDF

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Publication number
WO2015196895A1
WO2015196895A1 PCT/CN2015/080332 CN2015080332W WO2015196895A1 WO 2015196895 A1 WO2015196895 A1 WO 2015196895A1 CN 2015080332 W CN2015080332 W CN 2015080332W WO 2015196895 A1 WO2015196895 A1 WO 2015196895A1
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Prior art keywords
module
image
cpu microprocessor
storage
lighting
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PCT/CN2015/080332
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English (en)
French (fr)
Inventor
陈凯柏
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陈凯柏
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Priority to EP15812258.0A priority Critical patent/EP3163871A4/en
Priority to AU2015281575A priority patent/AU2015281575A1/en
Priority to JP2016574164A priority patent/JP2017527154A/ja
Publication of WO2015196895A1 publication Critical patent/WO2015196895A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B13/00Burglar, theft or intruder alarms
    • G08B13/18Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength
    • G08B13/189Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems
    • G08B13/194Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems
    • G08B13/196Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems using television cameras
    • G08B13/19617Surveillance camera constructional details
    • G08B13/19619Details of casing
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B13/00Burglar, theft or intruder alarms
    • G08B13/18Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength
    • G08B13/189Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems
    • G08B13/194Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems
    • G08B13/196Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems using television cameras
    • G08B13/19617Surveillance camera constructional details
    • G08B13/19632Camera support structures, e.g. attachment means, poles
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B13/00Burglar, theft or intruder alarms
    • G08B13/18Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength
    • G08B13/189Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems
    • G08B13/194Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems
    • G08B13/196Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems using television cameras
    • G08B13/19695Arrangements wherein non-video detectors start video recording or forwarding but do not generate an alarm themselves
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/01Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium
    • G08B25/08Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium using communication transmission lines

Definitions

  • the present invention relates to an image recognition system, and more particularly to a device capable of controlling a lighting device to perform related operations by determining that a target enters a detection range by the image recognition system.
  • the main advantage of the conventional surveillance security system is that it is centralized in the management center to monitor or connect to the police station. Its purpose is to prevent thieves from invading and avoiding financial losses.
  • the camera device for monitoring is obviously located and slightly larger; There is also a monitoring device combined with induction lighting in the market. By sensing the detection of the target within the detection range, the illumination is turned on to alert and activate the monitoring device for recording, but no matter what kind of camera device is used, the number of settings is sufficient for the thief to be awkward.
  • the machine can easily avoid the video range, making the conventional surveillance security system as if it were a virtual device.
  • An object of the present invention is to provide an illumination device controlled by an image recognition system, which facilitates shooting within a monitoring range, and can avoid waste of storage space and ensure image quality storage effect.
  • the present invention provides the following technical solutions:
  • An illumination device controlled by an image recognition system comprising: an image device having an image module for intercepting an image frame; and an image recognition device for discriminating the image captured by the image module After the picture, a signal is sent to a CPU microprocessor, which simultaneously activates a lighting module and a storage module connected thereto for illumination and video storage.
  • An illumination device controlled by an image recognition system comprising: an image device, which is internally provided with an image module, an image recognition device, and a CPU microprocessor, wherein the image module can be used for cutting Taking an image image and transmitting it to the image recognition device for interpretation and transmitting information to the CPU microprocessor, thereby simultaneously starting the illumination module and the storage module connected to the CPU microprocessor for illumination and video storage, and additionally
  • the function module is connected to the CPU microprocessor and can additionally be used to activate the functions set according to requirements.
  • the additional function module comprises: an audio module for emitting an alarm sound, a wireless module for transmitting a reminder, a WIFI module for transmitting the stored image, and each module being connected to the CPU microprocessor. And driven by the WIFI module, the storage module is connected to the storage module for video storage.
  • An illumination device controlled by an image recognition system comprising: an image device having an image module for intercepting an image frame; and an image recognition device for discriminating the image captured by the image module and transmitting Signaling to a CPU microprocessor, the CPU microprocessor simultaneously starts a lighting module and a storage module connected thereto for lighting and video storage, and the CPU microprocessor is further connected with an additional function module, the additional function module has a sound module for sounding an alarm, a wireless module for transmitting a reminder, and a WIFI module for transmitting the stored image, each module is connected to and driven by the CPU microprocessor, and the WIFI module is connected to the
  • the storage module can further be used for recording storage selection of the storage module; an image database having at least one image frame therein, which is connected to the CPU microprocessor and transmits the intercepted image image to a comparison module for comparison The module is connected to the storage module to control the recording operation state of the storage module.
  • the illumination device controlled by the image recognition system comprises: a pivot seat disposed outside the image module, and the pivot seat can be fixed or adjusted to enhance image module retention, or Adjust the pivot base to change the field of view of the image module to obtain image capture images at different angles.
  • the present invention uses the image module to intercept the image, and cooperates with the image recognition device to determine whether there is a moving image in the monitoring range, and then cooperates with the CPU microprocessor to give a signal for starting the lighting module and the storage module for illumination and video storage. And the comparison between the image database and the comparison module can avoid the waste of storage space caused by the meaningless video storage, and enable the video storage space to effectively store the stored image with useful value.
  • FIG. 1 is a flow chart of a first embodiment of a lighting device controlled by an image recognition system according to an embodiment of the present invention.
  • FIG. 2 is a block diagram of a first embodiment of a lighting device controlled by an image recognition system according to an embodiment of the present invention.
  • FIG. 3 is a flow chart of a second embodiment of a lighting device controlled by an image recognition system according to an embodiment of the present invention.
  • FIG. 4 is a block diagram of a second embodiment of a lighting device controlled by an image recognition system according to an embodiment of the present invention.
  • FIG. 5 is a first practical application diagram of a lighting device controlled by an image recognition system according to an embodiment of the present invention.
  • FIG. 6 is a second practical application diagram of a lighting device controlled by an image recognition system according to an embodiment of the present invention.
  • FIG. 7 is a third practical application diagram of a lighting device controlled by an image recognition system according to an embodiment of the present invention.
  • FIG. 8 is a fourth practical application diagram of a lighting device controlled by an image recognition system according to an embodiment of the present invention.
  • FIG. 9 is a fifth practical application diagram of a lighting device controlled by an image recognition system according to an embodiment of the present invention.
  • FIG. 10 is a sixth practical application diagram of a lighting device controlled by an image recognition system according to an embodiment of the present invention.
  • FIG. 11 is a seventh practical application diagram of a lighting device controlled by an image recognition system according to an embodiment of the present invention.
  • FIG. 12 is a schematic diagram of an eighth practical application of an illumination device controlled by an image recognition system according to an embodiment of the present invention.
  • the present invention provides an illumination device controlled by an image recognition system, which comprises: an image device 1 having an image module 11 disposed therein for intercepting
  • the image module 11 is an image capturing lens.
  • the image recognition device 112 is configured to determine whether the image frame 14 captured by the image module 11 is a moving image. If the image is not moved, the related signal is not transmitted, but if Moving the image, the signal is sent to the CPU microprocessor 113. After receiving the signal, the CPU microprocessor 113 simultaneously activates an electrically connected illumination module 111 and a storage module 114.
  • the illumination module 111 can be a light emitting diode.
  • the storage module 114 can be a read only memory or a flash memory, and is not limited thereto, thereby performing illumination and video storage.
  • the CPU microprocessor 113 can also be connected to an additional function module 13, which includes: an audio module 131, which can be used to provide an alarm sound or a prompt tone, a wireless module 132, for handheld devices or wearable The device is configured to transmit a reminder or a remote control.
  • a WIFI module 133 is configured to connect the storage module 114 to detect the memory usage of the storage module 114, so as to additionally provide an external space connected by the Internet, or the WIFI.
  • the module 133 has built-in memory for the purpose of long-term video storage.
  • the additional function module 13 can also add or subtract other related modules according to the product model or the user's needs, and achieve the purpose of customization, and can be exempted from the place. After the target leaves the detection range, the illumination, the video recording, and the operation of the additional function module 13 are stopped, and the standby state is maintained, and the next target enters the detection range and starts again.
  • the power consumption and the storage space are saved.
  • the image recognition device 112 confirms that the detection range is a moving image
  • the storage space is stored and the waste of the recording storage space is greatly reduced.
  • the additional function module 13 is additionally supported to enable the present invention to increase the functionality of different functions for customization.
  • the image database 12 and the comparison module 121 are added to the architecture of the first embodiment, wherein the image database 12 is connected to The CPU microprocessor 113, and the image database 12 is additionally connected to the comparison module 121.
  • the CPU microprocessor 113 receives the foregoing signal to activate the illumination module 111 and the storage module 114, the image database 12 is also started.
  • the image database 12 is an image screen 14 that is input in advance, and is used to determine whether the target conforms to the image screen 14.
  • the number of storages is not limited (as determined by the configuration memory), and the image screen 141 captured by the image module 11 is received.
  • the illumination module 121 is also connected to an additional function module 13 .
  • the additional function module 13 includes: an audio module 131, which can be used to provide an alarm sound or a prompt tone, and a wireless module 132.
  • a WIFI module 133 is configured to connect the storage module 114 to detect the memory usage of the storage module 114, so as to provide additional connection provided by the Internet.
  • the external space or the built-in memory of the WIFI module 133 thereby achieving the purpose of long-term video storage, the additional function module 13 can also increase or decrease other related modules according to the product model or the user's needs, and achieve customization.
  • the purpose is to stop the illumination, the video recording, and the operation of the additional function module 13 when the target leaves the detection range, and assume the standby state, and the next target enters the detection range and starts again.
  • the added image database 12 and the comparison module 121 mainly add an identification condition, and the image recognition device 112 can store or delete the image in the image database 12, in addition to detecting whether it is a moving image.
  • the related image screen 14 is judged to be more familiar if it is the image screen 14 in the image database 12.
  • the person (such as family, friends, relatives, etc.) stops the recording, but if it is the image screen 14 outside the image database 12, the recording is continued, thereby improving the effective use of the overall storage space.
  • the additional function module 13 is configured in both embodiments.
  • the main difference is that one is driven by the CPU microprocessor 113, and the other embodiment is compared with the image database 12. After the module 121 discriminates the image again, the image is driven, so that the image comparison can achieve the purpose of accurate determination under more restrictive conditions.
  • the power board 17 in each embodiment shown in FIG. 5 to FIG. 12 is not limited in its installation position, and the main purpose is to supply power, and the foregoing circuit board 15 is mainly located in the image device 1, and is mainly used for the image device 1. It is arranged in the relevant module to perform the flow steps as in the first embodiment or the second embodiment; therefore, the relevant position and use are first described for viewing.
  • each of the image devices is a general light bulb, a fluorescent lamp, and a ceiling light.
  • the image device 1 can be seen from FIG. 5 , and has a circuit board 15 , and the exterior has a power board 17 .
  • the illumination module 111 is a commonly used LED illumination component.
  • the connection mode of the illumination module 111 is the same as that of the first embodiment and the second embodiment, and is disposed separately from the image device 1 .
  • the pivot block 16 is further provided with an image module 11 for recording.
  • the chip included on the circuit board 15 has an image module 11 and image recognition.
  • the device 112, the CPU microprocessor 113, the storage module 114, and the additional function module 13 further include: a sound module 131, a wireless module 132, and a WIFI module 133.
  • the function of each module is the same as that of the foregoing description, and the lighting module 111 can be directly disposed in the circuit board 15 by another setting means. The purpose of reducing the size, cost, or adding more sample parts of the image device 1 is reduced.
  • the fluorescent lamp is exemplified, and the pivoting seat 16 in the fluorescent lamp can also provide a pivoting function to adjust the direction of the image module 11 to obtain different angles of the image; and FIG. 8 and FIG.
  • Each is a xenon lamp and an LED panel lamp, and further has a pivot seat 16 for pivoting the fluorescent lamp.
  • the circuit board 15 is further provided with an image database 12 and a comparison module 121. After the image captured by the image module 11 is transmitted to the CPU microprocessor 113 via the image recognition device 112, the illumination module 111 and the storage module 114 are activated, and the CPU microprocessor 113 also transmits a signal to the image database 12 via the ratio. After the module 121 is determined, a signal is sent for whether the storage module 114 interrupts recording or continuous recording.
  • the storage module 114 also connects the additional function module 13 to perform the foregoing flow chart of the second embodiment.
  • the foregoing structure and operation flow of the image module 11 can be applied to different image devices, as shown in FIG. 7 and FIG. 9 to FIG. 11 , which are respectively a ceiling lamp, a chandelier, a wall lamp, and a track lamp.
  • the examples of the invention are not limited thereto, and the examples are for illustrative purposes only.
  • the image module 11 can be disposed on the pivot seat 16 that cannot be pivotally adjusted to enhance positional fixation or to be pivotally adjustable.
  • the angle is adjusted by the pivoting seat 16 and the illumination device 111 is further driven in conjunction with the image recognition device 112 for image recognition.
  • the present invention further indicates that the present invention mainly drives the illumination device 111 by using image recognition.
  • the pivot-free structure is more recommended to use the flow in the first embodiment, and the related module is simply taken by the image interception; and the pivoted structure is recommended to use the second embodiment.
  • the process, the image database 12 and the comparison module 121 are added, and the relevant module activated by the image discrimination is more practical; however, the overall pivoting or non-pivoting structure does not necessarily limit the flow according to the process of the present invention.
  • the flow as in the second embodiment can also be used in a non-pivoting structure, but a plurality of different angles of view cannot be obtained for comparison with the comparison module 121.
  • the present invention uses the image capture module to determine the drive storage module and the illumination module corresponding to the CPU microprocessor, so that the discrimination is promoted to image recognition instead of the conventional thermal sensing; further, the default data and the ratio are established by using the image database.
  • the module is discriminated to adjust the video storage space to the most effective use state; and the additional function module can be added or subtracted to meet the user's needs, so that the invention has more flexible use of the video storage space, and After the image is discriminated by multiple discrimination conditions, the accuracy is improved.

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  • Multimedia (AREA)
  • Engineering & Computer Science (AREA)
  • Emergency Management (AREA)
  • Business, Economics & Management (AREA)
  • Signal Processing (AREA)
  • Circuit Arrangement For Electric Light Sources In General (AREA)
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Abstract

本发明公开了一种用影像辨识系统控制的照明装置,其包含一影像装置,其内部设有影像模块,能用以截取影像画面,通过影像辨识装置判别所截取的画面并发送信号至CPU微处理器,通过该CPU微处理器发出的信号,同时启动与CPU微处理器连接的照明模块与储存模块进行照明及录像储存,并通过影像数据库与比对模块,使影像判断在更多限制条件下进行,达到判别准确的目的;还具有音效模块、无线模块、WIFI模块等附加功能模块连接于该CPU微处理器,从而增加该CPU微处理器具有的启动功能,让本发明具有弹性的录像储存空间、以及提升影像比对的准确度。

Description

用影像辨识系统控制的照明装置 技术领域
本发明涉及一影像辨识系统,尤指一种能通过该影像辨识系统判断目标进入侦测范围内,从而控制照明装置进行相关运作的装置。
背景技术
以往惯用的监视保安系统,其主要优点在于集中于管理中心监控或连接于警局,其使用目的在于防止小偷侵入、避免财务损失,但其监视用的摄像装置位置明显且体积略大;另外,市面上也有结合感应照明的监控装置,通过感测侦测范围内目标进入而开启照明以警示提醒并启动监控装置进行录像,但不论使用何种摄像装置,其设置数量足以让小偷具可趁之机,能轻松闪避录像范围,使该惯用的监视保安系统犹如虚设一般。
科技随时代进步,目前摄像装置常利用微型摄像机进行安装使用,因体积较小,应用领域广泛,对于隐蔽拍摄,如执法取证、监控、搜证等场合中更是常见,但其需通过按键配合人工控制,故在装设使用时具有一定缺陷存在;而后有厂商将其结合在照明装置上使用,当电源启动时就开始照明以及储存拍摄影像,但常存在因时间过长而储存容量不足或是储存画质不佳等情况,诸如上述各种缺点仍有进一步改良的空间。
发明内容
本发明的目的是提供一种用影像辨识系统控制的照明装置,以方便对监视范围内进行拍摄,且能够避免存储空间浪费,保证画质存储效果。
为实现上述目的,本发明提供了如下技术方案:
一种用影像辨识系统控制的照明装置,其特征在于,包含有:一个影像装置,其内设有一影像模块,用以截取影像画面;一影像辨识装置,用以判别该影像模块所截取的影像画面后,发送信号到一CPU微处理器,该CPU微处理器同时启动与其连接的一照明模块与一储存模块进行照明及录像储存。
一种用影像辨识系统控制的照明装置,包含有:一影像装置,其内部设有影像模块、影像辨识装置、CPU微处理器,其中该影像模块能用以截 取影像画面,并传输至影像辨识装置内进行判读后传送信息至该CPU微处理器,借此同时启动连接该CPU微处理器的照明模块与储存模块来进行照明及录像储存,而另有一附加功能模块相连接该CPU微处理器,能额外配合启动依需求所设定的功能。
优选地,其中该附加功能模块包含有:一音效模块,用以发出警报声响、一无线模块,用以传递提醒、一WIFI模块,用以传送储存影像,各模块与该CPU微处理器连接,并受其驱动,且该WIFI模块连接该储存模块,可供该储存模块的录像储存。
一种用影像辨识系统控制的照明装置,包含有:一个影像装置,其内设有一影像模块,用以截取影像画面;一影像辨识装置,用以判别该影像模块所截取的影像画面后,发送信号到一CPU微处理器,该CPU微处理器同时启动与其连接的一照明模块与一储存模块进行照明及录像储存,而该CPU微处理器还连接有一附加功能模块,该附加功能模块具有用以发出警报声响的一音效模块、用以传递提醒的一无线模块、以及用以传送储存影像的一WIFI模块,各模块与该CPU微处理器连接,并受其驱动,且该WIFI模块连接该储存模块,能进一步供该储存模块的录像储存选择;一影像数据库,其内存有至少一个影像画面,通过连接该CPU微处理器并传送该截取影像画面至一比对模块进行比对,该比对模块连接该储存模块,从而操控该储存模块录像运作状态。
优选地,所述的用影像辨识系统控制的照明装置,其中包含有:一枢座,该枢座设于该影像模块外,且该枢座可固定或调整,以增强影像模块固位,或调整该枢座以改变影像模块的视野范围,获得不同角度的截取影像画面。
较之先前惯用技术的缺点,本发明利用影像模块截取画面,配合影像辨识装置判别监视范围内是否有移动影像,进而配合CPU微处理器给予信号用来启动照明模块与储存模块进行照明及录像储存,以及影像数据库与比对模块的比对应用,能避免熟知无意义的录像储存造成的储存空间的浪费,让录像储存空间能有效存放有使用价值的储存影像,
附图说明
为便于进一步了解有关本发明为达上述目的、特征所采用的技术手段及其功效,这里举较佳实施例并配合图示说明如下。
图1是本发明实施例提供的用影像辨识系统控制的照明装置的第一实施例流程图。
图2是本发明实施例提供的用影像辨识系统控制的照明装置的第一实施利系统方块图。
图3是本发明实施例提供的用影像辨识系统控制的照明装置的第二实施例流程图。
图4是本发明实施例提供的用影像辨识系统控制的照明装置的第二实施利系统方块图。
图5是本发明实施例提供的用影像辨识系统控制的照明装置的第一实际应用示意图。
图6是本发明实施例提供的用影像辨识系统控制的照明装置的第二实际应用示意图。
图7是本发明实施例提供的用影像辨识系统控制的照明装置的第三实际应用示意图。
图8是本发明实施例提供的用影像辨识系统控制的照明装置的第四实际应用示意图。
图9是本发明实施例提供的用影像辨识系统控制的照明装置的第五实际应用示意图。
图10是本发明实施例提供的用影像辨识系统控制的照明装置的第六实际应用示意图。
图11是本发明实施例提供的用影像辨识系统控制的照明装置的第七实际应用示意图。
图12是本发明实施例提供的用影像辨识系统控制的照明装置的第八实际应用示意图。
附图符号说明:
1  影像装置    131 音效模块
11 影像模块    132 无线模块
111 照明模块       133 WIFI模块
112 影像辨识装置   14  影像画面
113 CPU微处理器    141 截取影像画面
114 储存模块       15  电路板
12  影像数据库     16  枢座
121 比对模块       17  电源板
13  附加功能模块
具体实施方式
根据本发明最佳的可行的实施例,并配合图示详细说明,以增加对本创作的了解。
请参阅图1~图2所示的第一实施例,本发明提供了一种用影像辨识系统控制的照明装置,其中包含有:一个影像装置1,其内部设有一影像模块11,用以截取影像画面,该影像模块11可为摄像镜头;一影像辨识装置112,用以判别该影像模块11所截取的影像画面14是否为移动影像,若不是移动影像,则不传送相关信号,但若为移动影像,则发送信号到CPU微处理器113,该CPU微处理器113接收到信号后,同时启动电性连接的一照明模块111与一储存模块114,此照明模块111可为发光二极管,而储存模块114可为只读存储器或闪存,并不加以限制,借此进行照明以及录像储存。
而该CPU微处理器113还可连接一附加功能模块13,该附加功能模块13包含有:一音效模块131,可用以提供警报声响或是提示音、一无线模块132,用于手持装置或穿戴装置,达到传递提醒或远程操控的目的、一WIFI模块133,用于连接该储存模块114,借以侦测该储存模块114的内存用量,便于额外提供由因特网所连接的外部空间,或是该WIFI模块133内建内存,借此达到长时间录像储存的目的,此附加功能模块13还可随产品型号或用户的需求不同,加以增减其它相关模块,达成客制化的目的,并能免除场所的布线限制;当目标离开侦测范围后,则停止照明、录像以及该附加功能模块13的运作,呈待机状况,待下一个目标进入侦测范围再次启动。
第一实施例中,其优点在于节省电力以及储存空间,因需经过影像辨识装置112确认侦测范围内为移动影像后,才会让储存空间进行录像储存,大幅减少录像储存空间的浪费,且额外配合挂载附加功能模块13,来让本发明能够增加不同功能达成客制化的目的。
再请参阅图3~图4中所示的第二实施例,第二实施例中主要是在第一实施例的架构中,增加影像数据库12以及比对模块121,其中该影像数据库12连接于该CPU微处理器113上,并且该影像数据库12另外连接比对模块121,当CPU微处理器113收到前述信号启动照明模块111以及储存模块114时,也一并启动该影像数据库12,此影像数据库12内为事先进行输入的影像画面14,用于判别目标是否符合该影像画面14,其储存数量并无一定限制(随配置内存所决定),接收由影像模块11所截取的影像画面141,并通过该CPU微处理器113传输至该比对模块121,进一步与相连接的影像数据库12进行判别是否具有符合影像画面14,若该影像数据库12内无相符合的影像,则继续录像储存,若该影像数据库12内有符合的影像则执行动作,传送信号至储存模块114内,使其录像中止储存,而该照明模块111则不受影响,持续照明,而该比对模块121还可连接一附加功能模块13,该附加功能模块13包含有:一音效模块131,可用以提供警报声响或是提示音、一无线模块132,用于手持装置或穿戴装置,达到传递提醒或远程操控的目的、一WIFI模块133,用于连接该储存模块114,借以侦测该储存模块114的内存用量,便于额外提供由因特网所连接的外部空间、或是该WIFI模块133内建内存,借此达到长时间录像储存的目的,此附加功能模块13还可随产品型号或用户的需求不同,加以增减其它相关模块,达成客制化的目的;当目标离开侦测范围后,则停止照明、录像以及该附加功能模块13的运作,呈待机状况,待下一个目标进入侦测范围再次启动。
第二实施例中,所增加的影像数据库12以及比对模块121,其主要为增加辨识条件,除影像辨识装置112所侦测是否为移动影像外,另可在影像数据库12内进行储存或删除相关影像画面14,当再次进行影像与比对模块判断时,若为影像数据库12内的影像画面14,则判断为较为熟识的 人(如家人、朋友、亲戚等),使录像中止储存,但若为影像数据库12外的影像画面14,则继续录像,借此提高整体储存空间的有效使用。
请参阅图1~图4所示,其中该附加功能模块13在两实施例中皆有配置,其主要差别在于:一个是CPU微处理器113驱动,另一实施例则通过影像数据库12与比对模块121再次判别影像后驱动,借此让影像比对能在更多限制条件下,达到判别准确的目的。
而以下图5~图12中所示各实施例中的电源板17,其设置位置并无一定限制,主要用途是供给电力,而前述的电路板15主要位于影像装置1中,其主要用于设置在相关模块中,进行如第一实施或第二实施中的流程步骤;故首先说明其相关位置与用途,以便阅览。
请参阅图5~图7所示,其中各影像装置分别是一般灯泡、日光灯以及吸顶灯,从图5中可见该影像装置1,其中具有一电路板15,外部则具有固定在一电源板17上的一枢座16,而该电路板15上具有各种不同功用的芯片,且该电路板15还连接有一个或一个以上的照明模块111,此照明模块111为一般常用的LED发光组件,而该照明模块111的连接方式同第一、二实施例中的连接方式,采用与影像装置1分离设置,该枢座16中还设有一影像模块11,可供录像,借助前述有关于第一实施例流程图的内容并配合图5,应能明白应用于一般灯泡时,先由该影像模块截取影像,传送数据至电路板15上,电路板15上包含的芯片有影像模块11、影像辨识装置112、CPU微处理器113、储存模块114,以及附加功能模块13,该附加功能模块13还包括有:音效模块131、无线模块132、WIFI模块133,能通过模块化方式拆换选择所需的使用功能,各模块功能与前述说明的内容相同,前述照明模块111还能通过另一种设置手段,让该照明模块111直接设在该电路板15内,达到减少影像装置1的体积、成本或是增添更多样零件的目的。
从图6中可见其所举例子为日光灯,该日光灯中的枢座16还能提供枢转功能,从而调整影像模块11的方向,进而取得不同角度的画面;而图8以及图12中所示,各为一种崁灯、LED面板灯,其中还具有用以枢转日光灯的枢座16,电路板15还设有一影像数据库12以及一比对模块121,当 影像模块11截取的影像经过影像辨识装置112传至该CPU微处理器113后,照明模块111与储存模块114起动的同时,该CPU微处理器113也会传送信号至该影像数据库12,经由比对模块121判别后,会针对储存模块114是否中断记录或是持续记录发出信号,该储存模块114也会连接附加功能模块13,进行前述如第二实施例流程图的内容。
前述有关于该影像模块11的结构以及运作流程,可应用于各不同的影像装置,如图7、图9~图11中所示,其分别为吸顶灯、吊灯、壁灯、以及轨道灯,本发明的范例并不受限于此,所举范例仅供理解所用,该影像模块11可设在无法枢转调整角度的枢座16上以增强位置固定、或是设在可枢转调整角度的枢座16上,借助枢座16调整角度,并配合前述针对影像辨识的影像辨识装置112,进一步驱动照明装置111,更表明了本发明主要是通过利用影像辨识方式来驱动照明装置111。
而在所举实际应用的物品中,无枢转的结构较建议使用第一实施例中的流程,单纯通过影像截取,进行启动相关模块;而具有枢转的结构则建议使用第二实施例中的流程,添加影像数据库12以及比对模块121,经影像判别进行启动的相关模块,更具有实用性;但其整体枢转或无枢转的结构并非一定要照本发明中的流程来限制其使用,也可在无枢转的结构中使用如第二实施例中的流程,但无法取得多种不同角度的画面供其与比对模块121比对进行作业。
综上所述,本发明通过影像截取判别后,配合CPU微处理器对应的驱动储存模块及照明模块,使判别提升至影像辨识,而非传统热感应;进一步借助影像数据库建立默认数据、以及比对模块加以判别,使录像储存空间得以调整至最有效的使用状态;且还可以附加功能模块增减所需功能,从而符合用户的需求,使本发明更具有弹性使用的录像储存空间,以及使影像通过多次判别条件判别后,准确度提升。

Claims (5)

  1. 一种用影像辨识系统控制的照明装置,其特征在于,包含有:
    一个影像装置,其内设有一影像模块,用以截取影像画面;一影像辨识装置,用以判别该影像模块所截取的影像画面后,发送信号到一CPU微处理器,该CPU微处理器同时启动与其相连接的一照明模块与一储存模块进行照明及录像储存。
  2. 一种用影像辨识系统控制的照明装置,其特征在于,包含有:
    一个影像装置,其内设有一影像模块,用以截取影像画面;一影像辨识装置,用以判别该影像模块所截取的影像画面后,发送信号到一CPU微处理器,该CPU微处理器同时启动与其相连接的一照明模块与一储存模块进行照明及录像储存,而该CPU微处理器还连接有一附加功能模块。
  3. 如权利要求2所述的用影像辨识系统控制的照明装置,其特征在于,其中该附加功能模块还包含有:一音效模块,用以发出警报声响、一无线模块,用以传递提醒、一WIFI模块,用以传送储存影像,各模块与该CPU微处理器连接,并受其驱动,且该WIFI模块连接该储存模块,可供该储存模块的录像储存。
  4. 一种用影像辨识系统控制的照明装置,其特征在于,包含有:
    一个影像装置,其内设有一影像模块,用以截取影像画面;一影像辨识装置,用以判别该影像模块所截取的影像画面后,发送信号到一CPU微处理器,该CPU微处理器同时启动与其相连接的一照明模块与一储存模块进行照明及录像储存,而该CPU微处理器还连接有一附加功能模块,该附加功能模块具有用以发出警报声响的一音效模块、用以传递提醒的一无线模块、以及用以传送储存影像的一WIFI模块,各模块与该CPU微处理器连接,并受其驱动,且该WIFI模块连接该储存模块,能进一步供该储存模块的录像进行储存选择;一影像数据库,其内存有至少一个影像画面,通过连接该CPU微处理器并传送该截取影像画面至一比对模块进行比对,该比对模块连接该储存模块,借以操控该储存模块录像的运作状态。
  5. 如权利要求1、2或4中任一项所述的用影像辨识系统控制的照明装置,其特征在于,其中还包含有:一枢座,该枢座设于该影像模块外,且 该枢座可固定或调整,以增强影像模块固位,或调整该枢座以改变影像模块的视野范围,获得不同角度的截取影像画面。
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